Aug 2026· Natural Resources for Human Health· 0 citations· 14 references
TL;DR
A simple, permissioned blockchain-based system for checking the integrity of EHRs using Hyperledger Fabric and SHA-256 cryptographic hashing without storing sensitive medical data on-chain is proposed.
Abstract
The modern use of Electronic Health Records (EHRs) has made healthcare useful but it’s growing demand also raised more concerns about data integrity, unauthorised changes, and the ability to audit centralised storage systems. The existing blockchain-based healthcare solutions largely emphasis on sharing data and controlling access and they frequently rely on lot of computational overhead or complicated cryptographic mechanisms that limit their suitability for real time use. To address this we proposed a simple, permissioned blockchain-based system for checking the integrity of EHRs using Hyperledger Fabric and SHA-256 cryptographic hashing without storing sensitive medical data on-chain. Only deterministic hash values of patient records are recorded for tamper-evident verification without giving away private information. The Fabric Certificate Authority makes sure that identity management and access control are restricted only to authenticated and role-based users participate. A proof-of-concept implementation using Docker-based deployment. A quantitative analysis demonstrates that the hashing latency is low (0.005 seconds per record), the time it takes to execute a smart contract is about 50 milliseconds, and the accuracy of tamper detection is 100% when simulated attacks are used. The proposed research gives a practical and scalable method for healthcare systems which make sure that patient privacy is protected and accurate. Many existing blockchain healthcare systems that focus primarily on data sharing or analytics, proposed framework specifically addresses lightweight and real-time integrity verification of electronic health records while minimizing blockchain storage overhead.
This work presents a privacy‐preserving remote healthcare system that integrates blockchain technology with a root seed‐based pseudonymization mechanism and lightweight cryptographic controls. Addressing the privacy risks of public ledgers and the limited computational resources of medical IoT devices, the proposed s...
Hoc Minh Le, Özgür Öksüz· Concurrency and Computation· 0 citations
A novel blockchain-based secure framework with the integration of Ethereum smart contracts, CBOR compression, AES-256 GCM encryption, and SHA-256 validation is proposed with the integration of Ethereum smart contracts, CBOR compression, AES-256 GCM encryption, and SHA-256 validation.
Vinita Hari Patil, S. Kolhe· Journal of Intelligent Decis...· 0 citations
Digital infrastructures are becoming very popular in healthcare systems to store and process Electronic Health Records (EHRs), but the majority of current systems are centralized and prone to breach of data, unauthorized access and manipulation of data. The proposed research proposes a solution to these concerns by int...
Ram K. Shivany, Barakkath Nisha U, J. S et al.· International Conference Inn...· 0 citations
Overall, the proposed solution enhances interoperability, auditability, and automation while ensuring data privacy and security, demonstrating its viability across various blockchain networks.
A. Kashmar, A. I. Shihab· Iraqi Journal of Science· 0 citations
This work demonstrates that efficient cryptographic integration and optimization through simulation can produce a privacy-preserving blockchain for healthcare that streamlines EHR handling securely and at scale.
Md Asrar Ahmed, M. A. Sameer, M. Chaurasia et al.· Blockchain in Healthcare Tod...· 0 citations
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